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使用空间分割和时间B样条曲线从动态单光子发射计算机断层扫描投影直接进行时空分布的最小二乘估计。

Direct least-squares estimation of spatiotemporal distributions from dynamic SPECT projections using a spatial segmentation and temporal B-splines.

作者信息

Reutter B W, Gullberg G T, Huesman R H

机构信息

Center for Functional Imaging, Lawrence Berkeley National Laboratory, University of California 94720, USA.

出版信息

IEEE Trans Med Imaging. 2000 May;19(5):434-50. doi: 10.1109/42.870254.

Abstract

Artifacts can result when reconstructing a dynamic image sequence from inconsistent, as well as insufficient and truncated, cone beam single photon emission computed tomography (SPECT) projection data acquired by a slowly rotating gantry. The artifacts can lead to biases in kinetic model parameters estimated from time-activity curves generated by overlaying volumes of interest on the images. However, the biases in time-activity curve estimates and subsequent kinetic parameter estimates can be reduced significantly by first modeling the spatial and temporal distribution of the radiopharmaceutical throughout the projected field of view, and then estimating the time-activity curves directly from the projections. This approach is potentially useful for clinical SPECT studies involving slowly rotating gantries, particularly those using a single-detector system or body contouring orbits with a multidetector system. We have implemented computationally efficient methods for fully four-dimensional (4-D) direct estimation of spatiotemporal distributions from dynamic SPECT projection data. Temporal B-splines providing various orders of temporal continuity, as well as various time samplings, were used to model the time-activity curves for segmented blood pool and tissue volumes in simulated cone beam and parallel beam cardiac data acquisitions. Least-squares estimates of time-activity curves were obtained quickly using a workstation. Given faithful spatial modeling, accurate curve estimates were obtained using cubic, quadratic, or linear B-splines and a relatively rapid time sampling during initial tracer uptake. From these curves, kinetic parameters were estimated accurately for noiseless data and with some bias for noisy data. A preliminary study of spatial segmentation errors showed that spatial model mismatch adversely affected quantitative accuracy, but also resulted in structured errors (projected model versus raw data) that were easily detected in our simulations. This suggests iterative refinement of the spatial model to reduce structured errors as an area of future research.

摘要

当从由缓慢旋转的机架采集的不一致、不足和截断的锥束单光子发射计算机断层扫描(SPECT)投影数据重建动态图像序列时,可能会产生伪影。这些伪影会导致从通过在图像上叠加感兴趣体积生成的时间-活度曲线估计的动力学模型参数出现偏差。然而,通过首先对整个投影视野内放射性药物的空间和时间分布进行建模,然后直接从投影中估计时间-活度曲线,可以显著减少时间-活度曲线估计以及后续动力学参数估计中的偏差。这种方法对于涉及缓慢旋转机架的临床SPECT研究可能是有用的,特别是那些使用单探测器系统或多探测器系统的身体轮廓轨道的研究。我们已经实现了从动态SPECT投影数据中完全四维(4-D)直接估计时空分布的计算高效方法。在模拟的锥束和平行束心脏数据采集中,使用提供不同时间连续性阶数以及不同时间采样的时间B样条来对分割的血池和组织体积的时间-活度曲线进行建模。使用工作站快速获得时间-活度曲线的最小二乘估计。在给定忠实的空间建模的情况下,使用三次、二次或线性B样条以及在初始示踪剂摄取期间相对快速的时间采样获得了准确的曲线估计。从这些曲线中,对于无噪声数据准确估计了动力学参数,对于有噪声数据存在一些偏差。对空间分割误差的初步研究表明,空间模型不匹配会对定量准确性产生不利影响,但也会导致在我们的模拟中很容易检测到的结构化误差(投影模型与原始数据)。这表明迭代改进空间模型以减少结构化误差是未来研究的一个领域。

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